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Dielectrophoretic Microfluidic Device for in Vitro Fertilization

机译:体外受精的介电泳微流控装置

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摘要

The aim of this work was to create a microfluidic platform that uses in vitro fertilization (IVF) and avoids unnecessary damage to oocytes due to the dielectrophoretic force manipulation of the sperms and oocytes that occurs in a traditional IVF operation. The device from this research can serve also to decrease medium volumes, as well as the cost of cell culture under evaporation, and to prevent unnecessary risk in intracytoplasmic sperm injection (ICSI). To decrease the impact and destruction of the oocyte and the sperm, we adopted a positive dielectrophoretic force to manipulate both the sperms and the oocyte. The mouse oocytes were trapped with a positive dielectrophoretic (p-DEP) force by using Indium Tin Oxide (ITO)-glass electrodes; the ITO-glass electrode chip was fabricated by wet etching the ITO-glass. The polydimethylsiloxane (PDMS) flow-focusing microfluidic device was used to generate microdroplets of micrometer size to contain the zygotes. The volume of the microdroplets was controlled by adjusting the flow rates of both inlets for oil and the DEP buffer. As a result, the rate of fertilization was increased by about 5% beyond that of the DEP treatment in traditional IVF, and more than 20% developed to the blastocyst stage with a low sperm-oocyte ratio.
机译:这项工作的目的是创建一个使用体外受精(IVF)的微流控平台,并避免由于传统IVF操作中发生的精子和卵母细胞的介电泳力操纵而对卵母细胞造成不必要的损害。这项研究的设备还可以减少培养基体积以及蒸发条件下的细胞培养成本,并防止细胞质内精子注射(ICSI)带来不必要的风险。为了减少卵母细胞和精子的撞击和破坏,我们采用正介电泳力同时操纵精子和卵母细胞。使用氧化铟锡(ITO)玻璃电极以正介电电泳(p-DEP)力捕获小鼠卵母细胞; ITO玻璃电极芯片是通过对ITO玻璃进行湿蚀刻而制成的。聚二甲基硅氧烷(PDMS)流动聚焦微流体装置用于产生微米大小的微滴,以容纳受精卵。通过调节油和DEP缓冲液两个入口的流速来控制微滴的体积。结果,受精率比传统IVF的DEP处理提高了约5%,到精囊率低的胚泡期已超过20%。

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